影像引导前列腺癌近距离放射治疗的针刺模拟

Shan Jiang, N. Hata, R. Kikinis
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引用次数: 15

摘要

近距离放射治疗是治疗前列腺癌的有效方法。宝贵的种子植入与计划的放射性剂量照射周围组织几个月,将最大限度地减少健康组织的损害,而最大限度地破坏癌细胞。然而,在插入过程中,针尖上的力载荷会引起组织变形,导致种子错位。这将导致剂量不足的区域和并发症,如阳痿或尿失禁。显然,提高种植体的准确性可以改善局部控制,也可以改善疾病的整体控制,并减少整体毒性。本文描述了基于大变形非线性动态有限元数值算法结合Mooney-Rivlin材料模型的插针软组织三维模型。可以模拟非线性材料性能的力学行为以及针与软组织的相互作用。因此,种植体误差可以通过种植体位置和计划种植体位置来计算。在本研究中,利用该模型测试了种子放置误差对插入点、针头方向和插入距离的敏感性。结果表明,插入点与目标位置的距离越短,放置误差越小,该方法可作为机器人辅助前列腺近距离治疗无模板的补充指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Needle Insertion Simulation for Image-Guided Brachytherapy of Prostate Cancer
Brachytherapy is an effective treatment for prostate cancer. Preciously implant of seeds with planned radioactive dose irradiate surrounding tissue over several months will minimize healthy tissue damage while maximize the destruction of cancerous cells. However, force load on the tip of insertion needle will cause the tissue deformation during the process and result in the misplaced seeds. This will lead to underdosed regions and complications, such as impotence or urinary incontinence. Apparently, improved implant accuracy can improve the local control and can improve global control of the disease and also reduce global toxicity. In this paper, a 3D model of needle insertion soft tissue based on large deformation non linear dynamic FEM (Finite Element Method) numerical algorithm combined with Mooney-Rivlin material model is described. Mechanical behavior of the non-linear material property can be simulated as well as the interaction between needle and soft tissue. Therefore, implant error can be calculated with the seeds implant position and planned seeds location. In this research, this model is used to test the sensitivity of seed placement error with insertion point, needle orientation, and insertion distance. As results shown, the shorter distance between the insertion point and target location, the smaller placement error occurred This method can be used as complementarities instruction for robot assistant prostate brachytherapy without template.
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